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Oocyte production and sperm utilization patterns in semi-fertile strains of Caenorhabditis elegans

机译:秀丽隐杆线虫半可育菌株的卵母细胞产生和精子利用方式

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Background Caenorhabditis elegans hermaphrodites are capable of producing hundreds of progeny. However, genetic and environmental factors can keep many animals from attaining their full reproductive potential. In these situations, efficient use of any functional gametes becomes more important for reproductive success. To learn about this aspect of C. elegans reproductive biology, we examined oocyte production and sperm utilization patterns in a unique collection of semi-fertile sperm function mutants. Results In the mutants examined here, broods can be very small but sperm induced high levels of ovulation. Ovulation rates reach maximum levels between the first and second day of adulthood. Ovulations rates remain high during the reproductive period and gradually decline with age. These results further demonstrate a decoupling of the ability of sperm to fertilize oocytes and induce ovulation. We also observe that in our semi-fertile mutants the peak of successful fertilization events precedes the bulk of oocyte production. Mixing populations of functional and nonfunctional sperm under conditions without sperm competition also shows that functional sperm are utilized efficiently. Although overall brood size can be similar for different mutant strains, slight differences in the pattern of sperm utilization in these strains can lead to significant differences in resource utilization and population growth. Conclusions This study represents the first detailed description of oocyte and progeny production patterns over the entire reproductive period for wild-type and fertility impaired strains of C. elegans. The phenotype of our mutants provide an ideal system for studying sperm utilization patterns since they only affect one major process, the ability to fertilize oocytes. In semi-fertile mutants, the nature of the reproductive process and/or specific molecular mechanisms ensures that any functional sperm are utilized quickly. Only a fraction of the sperm produced by our semi-sterile mutants are functional as opposed to every sperm having a low but equal chance of fertilizing an oocyte. In addition to the number of progeny produced, the pattern of progeny production can have an important influence on the dynamics of population growth.
机译:背景秀丽隐杆线虫雌雄同体能够产生数百个后代。但是,遗传和环境因素会使许多动物无法充分发挥其繁殖潜能。在这些情况下,有效利用任何功能性配子对于生殖成功至关重要。要了解秀丽隐杆线虫生殖生物学的这一方面,我们检查了半精子精子功能突变体的独特集合中的卵母细胞生产和精子利用模式。结果在这里检查的突变体中,育雏可能很小,但是精子诱导了高水平的排卵。在成年的第一天和第二天之间,排卵率达到最高水平。生殖期的排卵率很高,并且随着年龄的增长逐渐下降。这些结果进一步证明了精子使卵母细胞受精和诱导排卵的能力脱钩。我们还观察到,在我们的半能育突变体中,成功受精事件的峰值先于卵母细胞的产生。在没有精子竞争的条件下混合功能性和非功能性精子群体也表明有效地利用了功能性精子。尽管不同突变菌株的总体育雏尺寸可能相似,但是这些菌株中精子利用方式的细微差异可能导致资源利用和种群增长的显着差异。结论这项研究代表了对秀丽隐杆线虫野生型和繁殖力受损菌株在整个繁殖期的卵母细胞和后代生产模式的首次详细描述。我们的突变体的表型为研究精子利用模式提供了理想的系统,因为它们仅影响一个主要过程,即使卵母细胞受精的能力。在半能育突变体中,生殖过程和/或特定分子机制的性质可确保快速利用任何功能性精子。与我们的半不育突变体产生的精子相比,只有一小部分具有功能,而每个精子受精卵的机会却很低,但均等。除了产生后代的数量外,后代的生产方式可能对人口增长的动态有重要影响。

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